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Tumor cell responses to a novel glutathione S-transferase-activated nitric oxide-releasing prodrug

  1. Author:
    Findlay, V. J.
    Townsend, D. M.
    Saavedra, J. E.
    Buzard, G. S.
    Citro, M. L.
    Keefer, L. K.
    Ji, X. H.
    Tew, K. D.
  2. Author Address

    Tew, KD, Fox Chase Canc Ctr, Dept Pharmacol, 7701 Burholme Ave, Philadelphia, PA 19111 USA Fox Chase Canc Ctr, Dept Pharmacol, Philadelphia, PA 19111 USA. SAIC Frederick, Basic Res Program, Frederick, MD USA. NCI, Comparat Carcinogenesis Lab, Frederick, MD 21701 USA. NCI, Macromol Crystallog Lab, Frederick, MD 21701 USA.
    1. Year: 2004
  1. Journal: Molecular Pharmacology
    1. 65
    2. 5
    3. Pages: 1070-1079
  2. Type of Article: Article
  1. Abstract:

    We have used structure-based design techniques to introduce the drug O-2-[2,4-dinitro-5-(N-methyl-N-4-carboxyphenylamino) phenyl] 1-N,N-dimethylamino) diazen-1-ium-1,2-diolate (PABA/NO), which is efficiently metabolized to potentially cytolytic nitric oxide by the pi isoform of glutathione S-transferase, an enzyme expressed at high levels in many tumors. We have used mouse embryo fibroblasts (MEFs) null for GSTpi (GSTpi(-/-)) to show that the absence of GST pi results in a decreased sensitivity to PABA/NO. Cytotoxicity of PABA/NO was also examined in a mouse skin fibroblast (NIH3T3) cell line that was stably transfected with GSTpi and/or various combinations of gamma-glutamyl cysteine synthetase and the ATP-binding cassette transporter MRP1. Overexpression of MRP1 conferred the most significant degree of resistance, and in vitro transport studies confirmed that a GSTpi-activated metabolite of PABA/NO was effluxed by MRP1 in a GSH-dependent manner. Additional studies showed that in the absence of MRP1, PABA/NO activated the extracellular-regulated and stress-activated protein kinases ERK, c-Jun NH2-terminal kinase (JNK), and p38. Selective inhibition studies showed that the activation of JNK and p38 were critical to the cytotoxic effects of PABA/NO. Finally, PABA/NO produced antitumor effects in a human ovarian cancer model grown in SCID mice

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